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Multi-point monitoring of nitrous oxide emissions and aeration efficiency in a full-scale conventional activated sludge tank

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Abstract
In this work the biological tank of a WRRF in Italy was monitored placing five floating hoods on a plug-flow-like biological aerated tank surface in order to capture emission dynamics in both time and space domains. The five hoods report which location is more responsible for N2O production at a certain moment of the day. Moreover, with this experimental investigation, a spatial shift in N2O production towards the end of the biological tank could be detected. This provides important insights in the changes in biological dynamics especially with varying incoming load.
Keywords
GHG, Aeration, Off-gas, WASTE-WATER TREATMENT, N2O

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Citation

Please use this url to cite or link to this publication:

MLA
Bellandi, Giacomo, E Senesi, Cecilia Caretti, et al. “Multi-point Monitoring of Nitrous Oxide Emissions and Aeration Efficiency in a Full-scale Conventional Activated Sludge Tank.” Lecture Notes in Civil Engineering. Ed. G Mannina. Vol. 47. Cham, Switzerland: Springer, 2017. 398–403. Print.
APA
Bellandi, G., Senesi, E., Caretti, C., Caffaz, S., Nopens, I., & Gori, R. (2017). Multi-point monitoring of nitrous oxide emissions and aeration efficiency in a full-scale conventional activated sludge tank. In G Mannina (Ed.), Lecture Notes in Civil Engineering (Vol. 47, pp. 398–403). Presented at the 2017 Frontiers international conference on Wastewater Treatment (FICWTM 2017), Cham, Switzerland: Springer.
Chicago author-date
Bellandi, Giacomo, E Senesi, Cecilia Caretti, Simone Caffaz, Ingmar Nopens, and Riccardo Gori. 2017. “Multi-point Monitoring of Nitrous Oxide Emissions and Aeration Efficiency in a Full-scale Conventional Activated Sludge Tank.” In Lecture Notes in Civil Engineering, ed. G Mannina, 47:398–403. Cham, Switzerland: Springer.
Chicago author-date (all authors)
Bellandi, Giacomo, E Senesi, Cecilia Caretti, Simone Caffaz, Ingmar Nopens, and Riccardo Gori. 2017. “Multi-point Monitoring of Nitrous Oxide Emissions and Aeration Efficiency in a Full-scale Conventional Activated Sludge Tank.” In Lecture Notes in Civil Engineering, ed. G Mannina, 47:398–403. Cham, Switzerland: Springer.
Vancouver
1.
Bellandi G, Senesi E, Caretti C, Caffaz S, Nopens I, Gori R. Multi-point monitoring of nitrous oxide emissions and aeration efficiency in a full-scale conventional activated sludge tank. In: Mannina G, editor. Lecture Notes in Civil Engineering. Cham, Switzerland: Springer; 2017. p. 398–403.
IEEE
[1]
G. Bellandi, E. Senesi, C. Caretti, S. Caffaz, I. Nopens, and R. Gori, “Multi-point monitoring of nitrous oxide emissions and aeration efficiency in a full-scale conventional activated sludge tank,” in Lecture Notes in Civil Engineering, Palermo, Italy, 2017, vol. 47, pp. 398–403.
@inproceedings{8545375,
  abstract     = {{In this work the biological tank of a WRRF in Italy was monitored placing five floating hoods on a plug-flow-like biological aerated tank surface in order to capture emission dynamics in both time and space domains. The five hoods report which location is more responsible for N2O production at a certain moment of the day. Moreover, with this experimental investigation, a spatial shift in N2O production towards the end of the biological tank could be detected. This provides important insights in the changes in biological dynamics especially with varying incoming load.}},
  author       = {{Bellandi, Giacomo and Senesi, E and Caretti, Cecilia and Caffaz, Simone and Nopens, Ingmar and Gori, Riccardo}},
  booktitle    = {{Lecture Notes in Civil Engineering}},
  editor       = {{Mannina, G}},
  isbn         = {{9783319584201}},
  issn         = {{2366-2557}},
  keywords     = {{GHG,Aeration,Off-gas,WASTE-WATER TREATMENT,N2O}},
  language     = {{eng}},
  location     = {{Palermo, Italy}},
  pages        = {{398--403}},
  publisher    = {{Springer}},
  title        = {{Multi-point monitoring of nitrous oxide emissions and aeration efficiency in a full-scale conventional activated sludge tank}},
  volume       = {{47}},
  year         = {{2017}},
}

Web of Science
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